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Z-flipon variants reveal the many roles of Z-DNA and Z-RNA in health and disease

Identifying roles for Z-DNA remains challenging given their dynamic nature. Here, we perform genome-wide interrogation with the DNABERT transformer algorithm trained on experimentally identified Z-DNA forming sequences (Z-flipons). The algorithm yields large performance enhancements (F1 = 0.83) over...

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Autores principales: Umerenkov, Dmitry, Herbert, Alan, Konovalov, Dmitrii, Danilova, Anna, Beknazarov, Nazar, Kokh, Vladimir, Fedorov, Aleksandr, Poptsova, Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10172764/
https://www.ncbi.nlm.nih.gov/pubmed/37164635
http://dx.doi.org/10.26508/lsa.202301962
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author Umerenkov, Dmitry
Herbert, Alan
Konovalov, Dmitrii
Danilova, Anna
Beknazarov, Nazar
Kokh, Vladimir
Fedorov, Aleksandr
Poptsova, Maria
author_facet Umerenkov, Dmitry
Herbert, Alan
Konovalov, Dmitrii
Danilova, Anna
Beknazarov, Nazar
Kokh, Vladimir
Fedorov, Aleksandr
Poptsova, Maria
author_sort Umerenkov, Dmitry
collection PubMed
description Identifying roles for Z-DNA remains challenging given their dynamic nature. Here, we perform genome-wide interrogation with the DNABERT transformer algorithm trained on experimentally identified Z-DNA forming sequences (Z-flipons). The algorithm yields large performance enhancements (F1 = 0.83) over existing approaches and implements computational mutagenesis to assess the effects of base substitution on Z-DNA formation. We show Z-flipons are enriched in promoters and telomeres, overlapping quantitative trait loci for RNA expression, RNA editing, splicing, and disease-associated variants. We cross-validate across a number of orthogonal databases and define BZ junction motifs. Surprisingly, many effects we delineate are likely mediated through Z-RNA formation. A shared Z-RNA motif is identified in SCARF2, SMAD1, and CACNA1 transcripts, whereas other motifs are present in noncoding RNAs. We provide evidence for a Z-RNA fold that promotes adaptive immunity through alternative splicing of KRAB domain zinc finger proteins. An analysis of OMIM and presumptive gnomAD loss-of-function datasets reveals an overlap of Z-flipons with disease-causing variants in 8.6% and 2.9% of Mendelian disease genes, respectively, greatly extending the range of phenotypes mapped to Z-flipons.
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spelling pubmed-101727642023-05-12 Z-flipon variants reveal the many roles of Z-DNA and Z-RNA in health and disease Umerenkov, Dmitry Herbert, Alan Konovalov, Dmitrii Danilova, Anna Beknazarov, Nazar Kokh, Vladimir Fedorov, Aleksandr Poptsova, Maria Life Sci Alliance Research Articles Identifying roles for Z-DNA remains challenging given their dynamic nature. Here, we perform genome-wide interrogation with the DNABERT transformer algorithm trained on experimentally identified Z-DNA forming sequences (Z-flipons). The algorithm yields large performance enhancements (F1 = 0.83) over existing approaches and implements computational mutagenesis to assess the effects of base substitution on Z-DNA formation. We show Z-flipons are enriched in promoters and telomeres, overlapping quantitative trait loci for RNA expression, RNA editing, splicing, and disease-associated variants. We cross-validate across a number of orthogonal databases and define BZ junction motifs. Surprisingly, many effects we delineate are likely mediated through Z-RNA formation. A shared Z-RNA motif is identified in SCARF2, SMAD1, and CACNA1 transcripts, whereas other motifs are present in noncoding RNAs. We provide evidence for a Z-RNA fold that promotes adaptive immunity through alternative splicing of KRAB domain zinc finger proteins. An analysis of OMIM and presumptive gnomAD loss-of-function datasets reveals an overlap of Z-flipons with disease-causing variants in 8.6% and 2.9% of Mendelian disease genes, respectively, greatly extending the range of phenotypes mapped to Z-flipons. Life Science Alliance LLC 2023-05-10 /pmc/articles/PMC10172764/ /pubmed/37164635 http://dx.doi.org/10.26508/lsa.202301962 Text en © 2023 Umerenkov et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Umerenkov, Dmitry
Herbert, Alan
Konovalov, Dmitrii
Danilova, Anna
Beknazarov, Nazar
Kokh, Vladimir
Fedorov, Aleksandr
Poptsova, Maria
Z-flipon variants reveal the many roles of Z-DNA and Z-RNA in health and disease
title Z-flipon variants reveal the many roles of Z-DNA and Z-RNA in health and disease
title_full Z-flipon variants reveal the many roles of Z-DNA and Z-RNA in health and disease
title_fullStr Z-flipon variants reveal the many roles of Z-DNA and Z-RNA in health and disease
title_full_unstemmed Z-flipon variants reveal the many roles of Z-DNA and Z-RNA in health and disease
title_short Z-flipon variants reveal the many roles of Z-DNA and Z-RNA in health and disease
title_sort z-flipon variants reveal the many roles of z-dna and z-rna in health and disease
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10172764/
https://www.ncbi.nlm.nih.gov/pubmed/37164635
http://dx.doi.org/10.26508/lsa.202301962
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